MA

Mohammad Ansari

ZHDC, University of Delhi, G.B. Pant University of Agriculture and Technology, Pantnagar

ORCID iD 0000-0002-8093-3868

About

Mohammad Wahid Ansari is the Assistant Professor of Botany at the University of Delhi, India. He has over 60 published papers and presently has an H-Index of 24. He is an expert in ethylene metabolism, and its regulation under stress conditions. His research interest lies on Plant hormone homeostasis and cross talk in response to abitotic stress (drought, salinity and very low and high temperatures) and biotic stress (Trichoderma harzianum, Priformospora indica and Fusarium mangiferae) stress, and pathogen infestation to mediate a wide range of cell developmental and physiological processes to produce more tolerant agricultural crops

Employment

  • ZHDC, University of Delhi Assistant Professor
    2015 - Present

Education

  • G.B. Pant University of Agriculture and Technology, Pantnagar Ph.D.
    2000 - 2004

Projects & Funding

Projects & funding information is unavailable.

Publications (10)

  • Review and future prospects on the impact of abiotic stresses and tolerance strategies in medicinal and aromatic plants
    Brazilian Journal of Botany 2024 DOI: 10.1007/s40415-024-01004-z
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  • Ethylene mediated physiological response for in vitro development of salinity tolerant tomato
    Journal of Plant Interactions 2020 DOI: 10.1080/17429145.2020.1820591
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  • Cyanide produced with ethylene by ACS and its incomplete detoxification by β-CAS in mango inflorescence leads to malformation
    Scientific Reports 2019
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  • Dose-dependent response of Trichoderma harzianum in improving drought tolerance in rice genotypes
    Planta
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  • First evidence of ethylene production by Fusarium mangiferae associated with mango malformation.
    Plant Signaling & Behavior
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  • Low temperature stress ethylene and not Fusarium, might be responsible for mango malformation.
    Plant Physiology and Biochemistry
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  • OsSUV3 transgenic rice maintains higher endogenous levels of plant hormones that mitigates adverse effects of salinity and sustains crop productivity
    Rice
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  • Production of Thermostable Organic Solvent Tolerant Keratinolytic Protease from Thermoactinomyces sp. RM4: IAA Production and Plant Growth Promotion.
    Frontier In Microbiology
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  • Salt tolerant SUV3 overexpressing transgenic rice plants conserve physicochemical properties and microbial communities of rhizosphere
    Chemosphere
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  • The role of miRNA in somatic embryogenesis
    Genomics
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